Literature DB >> 23702616

Host reaction to poly(2-hydroxyethyl methacrylate) scaffolds in a small spinal cord injury model.

Hong Ying Li1, Tobias Führmann, Yue Zhou, Paul D Dalton.   

Abstract

Tissue engineered scaffolds and matrices have been investigated over the past decade for their potential in spinal cord repair. They provide a 3-D substrate that can be permissive for nerve regeneration yet have other roles including neuroprotection, altering the inflammatory cascade and mechanically stabilizing spinal cord tissue after injury. In this study we investigated very small lesions (approx. 0.25 μL in volume) of the dorsal column into which a phase-separated poly(2-hydroxyethyl methacrylate) hydrogel scaffold is implanted. Using fluorescent immunohistochemistry to quantify glial scarring, the poly(2-hydroxyethyl methacrylate) scaffold group showed reduced intensity compared to lesion controls for GFAP and the chondroitin sulfate proteoglycan neurocan after 6 days. However, the scaffold and tissue was also pushed dorsally after 6 days while the scaffold was not integrated into the spinal cord after 28 days. Overall, this small-lesion spinal cord injury model provided information on the host tissue reaction of a TE scaffold while reducing animal discomfort and care.

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Year:  2013        PMID: 23702616     DOI: 10.1007/s10856-013-4956-8

Source DB:  PubMed          Journal:  J Mater Sci Mater Med        ISSN: 0957-4530            Impact factor:   3.896


  44 in total

1.  Acute inflammatory responses to mechanical lesions in the CNS: differences between brain and spinal cord.

Authors:  L Schnell; S Fearn; H Klassen; M E Schwab; V H Perry
Journal:  Eur J Neurosci       Date:  1999-10       Impact factor: 3.386

2.  Cell-cell interactions of human neural progenitor-derived astrocytes within a microstructured 3D-scaffold.

Authors:  Tobias Führmann; Lisa M Hillen; Katrin Montzka; Michael Wöltje; Gary A Brook
Journal:  Biomaterials       Date:  2010-07-24       Impact factor: 12.479

3.  Reactive glial cells: increased stiffness correlates with increased intermediate filament expression.

Authors:  Yun-Bi Lu; Ianors Iandiev; Margrit Hollborn; Nicole Körber; Elke Ulbricht; Petra G Hirrlinger; Thomas Pannicke; Er-Qing Wei; Andreas Bringmann; Hartwig Wolburg; Ulrika Wilhelmsson; Milos Pekny; Peter Wiedemann; Andreas Reichenbach; Josef A Käs
Journal:  FASEB J       Date:  2010-10-25       Impact factor: 5.191

4.  Fibrin matrix provides a suitable scaffold for bone marrow stromal cells transplanted into injured spinal cord: a novel material for CNS tissue engineering.

Authors:  Hiroyuki Itosaka; Satoshi Kuroda; Hideo Shichinohe; Hiroshi Yasuda; Shunsuke Yano; Shintaro Kamei; Ryoichi Kawamura; Kazutoshi Hida; Yoshinobu Iwasaki
Journal:  Neuropathology       Date:  2008-10-20       Impact factor: 1.906

5.  Dural repair reduces connective tissue scar invasion and cystic cavity formation after acute spinal cord laceration injury in adult rats.

Authors:  Christopher Iannotti; Y Ping Zhang; Lisa B E Shields; Yingchun Han; Darlene A Burke; Xiao-Ming Xu; Christopher B Shields
Journal:  J Neurotrauma       Date:  2006-06       Impact factor: 5.269

6.  Strain and model differences in behavioral outcomes after spinal cord injury in rat.

Authors:  C D Mills; B C Hains; K M Johnson; C E Hulsebosch
Journal:  J Neurotrauma       Date:  2001-08       Impact factor: 5.269

7.  Chitosan implants in the rat spinal cord: biocompatibility and biodegradation.

Authors:  Howard Kim; Charles H Tator; Molly S Shoichet
Journal:  J Biomed Mater Res A       Date:  2011-04-04       Impact factor: 4.396

8.  Neurotrophins BDNF and NT-3 promote axonal re-entry into the distal host spinal cord through Schwann cell-seeded mini-channels.

Authors:  N I Bamber; H Li; X Lu; M Oudega; P Aebischer; X M Xu
Journal:  Eur J Neurosci       Date:  2001-01       Impact factor: 3.386

9.  Mechanically engineered hydrogel scaffolds for axonal growth and angiogenesis after transplantation in spinal cord injury.

Authors:  Ajay Bakshi; Omar Fisher; Taner Dagci; B Timothy Himes; Itzhak Fischer; Anthony Lowman
Journal:  J Neurosurg Spine       Date:  2004-10

10.  A novel biodegradable implant for neuronal rescue and regeneration after spinal cord injury.

Authors:  Lev N Novikov; Liudmila N Novikova; Afshin Mosahebi; Mikael Wiberg; Giorgio Terenghi; Jan-Olof Kellerth
Journal:  Biomaterials       Date:  2002-08       Impact factor: 12.479

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  6 in total

Review 1.  Regenerative Therapies for Spinal Cord Injury.

Authors:  Nureddin Ashammakhi; Han-Jun Kim; Arshia Ehsanipour; Rebecca D Bierman; Outi Kaarela; Chengbin Xue; Ali Khademhosseini; Stephanie K Seidlits
Journal:  Tissue Eng Part B Rev       Date:  2019-10-23       Impact factor: 6.389

Review 2.  Stem cells for spinal cord injury: Strategies to inform differentiation and transplantation.

Authors:  Nisha R Iyer; Thomas S Wilems; Shelly E Sakiyama-Elbert
Journal:  Biotechnol Bioeng       Date:  2016-09-21       Impact factor: 4.530

Review 3.  Design and Fabrication of Polymeric Hydrogel Carrier for Nerve Repair.

Authors:  Xiaoyu Ma; Mengjie Wang; Yuanyuan Ran; Yusi Wu; Jin Wang; Fuhai Gao; Zongjian Liu; Jianing Xi; Lin Ye; Zengguo Feng
Journal:  Polymers (Basel)       Date:  2022-04-11       Impact factor: 4.967

Review 4.  Biomaterial Scaffolds in Regenerative Therapy of the Central Nervous System.

Authors:  Yanchao Wang; Hong Tan; Xuhui Hui
Journal:  Biomed Res Int       Date:  2018-04-01       Impact factor: 3.411

Review 5.  Hydrogel-assisted neuroregeneration approaches towards brain injury therapy: A state-of-the-art review.

Authors:  Vladimir A Kornev; Ekaterina A Grebenik; Anna B Solovieva; Ruslan I Dmitriev; Peter S Timashev
Journal:  Comput Struct Biotechnol J       Date:  2018-11-02       Impact factor: 7.271

Review 6.  Biomaterial and Therapeutic Approaches for the Manipulation of Macrophage Phenotype in Peripheral and Central Nerve Repair.

Authors:  Adrian Dervan; Antonio Franchi; Francisco R Almeida-Gonzalez; Jennifer K Dowling; Ohemaa B Kwakyi; Claire E McCoy; Fergal J O'Brien; Alan Hibbitts
Journal:  Pharmaceutics       Date:  2021-12-15       Impact factor: 6.321

  6 in total

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